Ab Initio calculation on magnetism of monatomic Fe nanowire on Au (111) surface

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Abstract

The magnetic anisotropy of the one-dimensional monatomic Fe wire on the Au (111) texture has been theoretically analyzed using Wien2k flamework. The model simulates experimentally observed ferromagnetic Fe monatomic wire self-organized along the terrace edge of the Au (788) plane, which exhibits the magnetizaiton perpendicular both the wire and Au plane. In the case of the model consisting the one-dimensional Fe wire placed on the Au (111) plane with the Au lattice cite, no significant anisotropy is resulted by the calculation. On the other hand, the model where the Fe wire is formed along the Au terrace like step indicates the anisotropy of which easy direction is along the wire, resulting in differenct direction from the experiment. When we introduce the disorder in the Fe wire array, the easy direction changes. As for the model that the every other Fe atoms are slightly closer to the Au step (≈0.0091 nm) the easy direction turns to be perpendicular to the wire and parallel to the Au plane, that is, the dislocation direction. The disorder in the Fe wire seems to play significant roll in the anisotropy. © 2010 IOP Publishing Ltd.

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Yasui, T., & Nawate, M. (2010). Ab Initio calculation on magnetism of monatomic Fe nanowire on Au (111) surface. In Journal of Physics: Conference Series (Vol. 200). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/200/7/072068

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